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首页> 外文期刊>Superlattices and microstructures >Influence of active layer thickness on photovoltaic performance of PTB7:PC70BM bulk heterojunction solar cell
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Influence of active layer thickness on photovoltaic performance of PTB7:PC70BM bulk heterojunction solar cell

机译:有源层厚度对PTB7:PC70BM本体异质结太阳能电池光伏性能的影响

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摘要

In this paper, we studied the effect of active layer thickness on the photovoltaic performance of inverted bulk heterojunction (BHJ) organic solar cell (OSC). The capacitance-voltage (C-V), dark current-voltage (I-V) and impedance spectroscopy (IS) analysis were carried out to explain the active layer thickness dependence on the photovoltaic performance. The OSC with an active layer thickness of 150 nm achieved the best power conversion efficiency (PCE) of 5.87%, while the OSC of 200 nm active layer thickness yielded the worst PCE. Reduction in the fill factor (FF) was the main reason for the reduction in the PCE at large active layer thickness. The dark I-V analysis revealed large defect density for the OSC with active layer thickness of 200 rim, which raised the charge recombination and leakage current and consequently reduced the FF. IS analysis predicted that the charge transport became the serious limitations for the OSC with 200 rim thick active layer, which can be attributed to the weakening of electric field as well as creation of field-free regions. It mainly caused a drastic drop in the fill factor by reducing the charge collection efficiency, consequently deteriorated the photovoltaic performance.
机译:在本文中,我们研究了有源层厚度对倒置体异质结(BHJ)有机太阳能电池(OSC)光伏性能的影响。进行了电容电压(C-V),暗电流电压(I-V)和阻抗谱(IS)分析,以解释活性层厚度对光伏性能的依赖性。有源层厚度为150 nm的OSC的最佳功率转换效率(PCE)为5.87%,而有源层厚度为200 nm的OSC的PCE最差。填充系数(FF)的减小是在较大的有源层厚度下PCE减小的主要原因。深色I-V分析显示,有源层厚度为200 rim的OSC具有较大的缺陷密度,从而提高了电荷复合和泄漏电流,从而降低了FF。 IS分析预测,电荷传输已成为具有200边缘厚有源层的OSC的严重限制,这可以归因于电场的减弱以及无场区的产生。这主要是由于降低了电荷收集效率而导致填充系数的急剧下降,因此使光电性能下降。

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